{"id":164523,"date":"2018-11-06T17:22:41","date_gmt":"2018-11-07T01:22:41","guid":{"rendered":"https:\/\/www.microsoft.com\/en-us\/research\/msr-research-item\/faster-phase-estimation\/"},"modified":"2018-11-06T17:22:41","modified_gmt":"2018-11-07T01:22:41","slug":"faster-phase-estimation","status":"publish","type":"msr-research-item","link":"https:\/\/www.microsoft.com\/en-us\/research\/publication\/faster-phase-estimation\/","title":{"rendered":"Faster Phase Estimation"},"content":{"rendered":"<div class=\"asset-content\">\n<p>We develop several algorithms for performing quantum phase estimation based on basic measurements and classical post-processing. We present a pedagogical review of quantum phase estimation and simulate the algorithm to numerically determine its scaling in circuit depth and width. We show that the use of purely random measurements requires a number of measurements that is optimal up to constant factors, albeit at the cost of exponential classical post-processing; the method can also be used to improve classical signal processing. We then develop a quantum algorithm for phase estimation that yields an asymptotic improvement in runtime, coming within a factor of log* of the minimum number of measurements required while still requiring only minimal classical post-processing. The corresponding quantum circuit requires asymptotically lower depth and width (number of qubits) than quantum phase estimation.<\/p>\n<\/div>\n<p><!-- .asset-content --><\/p>\n","protected":false},"excerpt":{"rendered":"<p>We develop several algorithms for performing quantum phase estimation based on basic measurements and classical post-processing. We present a pedagogical review of quantum phase estimation and simulate the algorithm to numerically determine its scaling in circuit depth and width. We show that the use of purely random measurements requires a number of measurements that is [&hellip;]<\/p>\n","protected":false},"featured_media":0,"template":"","meta":{"msr-url-field":"","msr-podcast-episode":"","msrModifiedDate":"","msrModifiedDateEnabled":false,"ep_exclude_from_search":false,"_classifai_error":"","msr-author-ordering":[{"type":"user_nicename","value":"ksvore"},{"type":"user_nicename","value":"mahastin"},{"type":"user_nicename","value":"michaelf"}],"msr_publishername":"Rinton Press","msr_publisher_other":"","msr_booktitle":"","msr_chapter":"","msr_edition":"Quantum Information and Computation","msr_editors":"","msr_how_published":"","msr_isbn":"","msr_issue":"","msr_journal":"Quantum Information and Computation","msr_number":"3&4","msr_organization":"","msr_pages_string":"306-328","msr_page_range_start":"306","msr_page_range_end":"328","msr_series":"","msr_volume":"14","msr_copyright":"","msr_conference_name":"","msr_doi":"","msr_arxiv_id":"","msr_s2_paper_id":"","msr_mag_id":"","msr_pubmed_id":"","msr_other_authors":"Krysta M. 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